Inside a Quantum Lab: How Magnons Could Power the Future of Computing
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Inside a Quantum Lab: How Magnons Could Power the Future of Computing
253 просмотра · 4 месяца назад
Resonance
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253 просмотра · 4 месяца назад
In this video, Jing Xu, Assistant Professor of Physics at the University of Central Florida, shares their journey into experimental physics and explores the promise of quantum magnonics research for developing quantum technologies.
Jing leads an experimental quantum magnetics lab focused on connecting different quantum systems. While today’s quantum devices operate using very different platforms, such as superconducting microwave circuits and optical networks, magnetic materials offer a powerful way to bridge these worlds. By tuning magnetic fields, researchers can precisely control magnons and their properties, opening new paths toward scalable quantum architectures.
The video also takes you inside the extreme experimental conditions required for quantum research. To protect fragile quantum states from thermal noise, experiments must run at temperatures of just a few millikelvin—colder than outer space.
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